Metal halide perovskite semiconductors have the potential to enable low-cost, flexible and efficient solar cells for a wide range of applications. Physical vapour deposition by co-evaporation of precursors is a method which results in very smooth and pin-hole-free perovskite thin films and allows excellent control over film thickness and composition. However, for a deposition method to become industrially scalable, reproducible process control and high device yields are essential. Unfortunately, to date the control and reproducibility of evaporating organic precursors such as methylammonium iodide (MAI) has proved extremely challenging. We show that the established method of controlling the evaporation-rate of MAI with quartz micro balances...
During recent years, power conversion efficiencies (PCEs) of organic-inorganic halide perovskite sol...
A simple vacuum deposition method for the preparation of high quality hybrid organic-inorganic methy...
Halide perovskites have generated considerable research interest due to their excellent optoelectron...
Vapor deposition processes, well established in the industry, are considered a cost effective manufa...
Vapor deposition processes, well established in the industry, are considered a cost‐effective manufa...
Herein, we present the precise stoichiometric control of methlyammonium lead iodide perovskite thin-...
Vapor-based processes are promising options to deposit metal halide perovskite solar cells in an ind...
Hybrid organic–inorganic perovskites are highly promising candidates for the upcoming generation of ...
Since the fabrication of the first organic-inorganic halide perovskites solar cell in 2009 this mate...
Perovskite thin film solar cells have experienced astonishing efficiency improvements from 2.2% to a...
Perovskite solar cells have become a game changer in the field of photovoltaics by reaching power co...
Understanding and controlling grain growth in metal halide perovskite polycrystalline thin films is ...
Abstract Vacuum-based co-evaporation promises to bring perovskite solar cells to larger scales, but ...
Perovskite solar cells have become a game changer in the field of photovoltaics by reaching power co...
Highly efficient solar cells using methylammonium lead iodide (MAPbI3) have been reported by many re...
During recent years, power conversion efficiencies (PCEs) of organic-inorganic halide perovskite sol...
A simple vacuum deposition method for the preparation of high quality hybrid organic-inorganic methy...
Halide perovskites have generated considerable research interest due to their excellent optoelectron...
Vapor deposition processes, well established in the industry, are considered a cost effective manufa...
Vapor deposition processes, well established in the industry, are considered a cost‐effective manufa...
Herein, we present the precise stoichiometric control of methlyammonium lead iodide perovskite thin-...
Vapor-based processes are promising options to deposit metal halide perovskite solar cells in an ind...
Hybrid organic–inorganic perovskites are highly promising candidates for the upcoming generation of ...
Since the fabrication of the first organic-inorganic halide perovskites solar cell in 2009 this mate...
Perovskite thin film solar cells have experienced astonishing efficiency improvements from 2.2% to a...
Perovskite solar cells have become a game changer in the field of photovoltaics by reaching power co...
Understanding and controlling grain growth in metal halide perovskite polycrystalline thin films is ...
Abstract Vacuum-based co-evaporation promises to bring perovskite solar cells to larger scales, but ...
Perovskite solar cells have become a game changer in the field of photovoltaics by reaching power co...
Highly efficient solar cells using methylammonium lead iodide (MAPbI3) have been reported by many re...
During recent years, power conversion efficiencies (PCEs) of organic-inorganic halide perovskite sol...
A simple vacuum deposition method for the preparation of high quality hybrid organic-inorganic methy...
Halide perovskites have generated considerable research interest due to their excellent optoelectron...